Abstract:
PURPOSE: A cargo handling system for high pressure liquid cargo using immiscible piston liquid and driving gas is provided to simplify loading and unloading works using piston liquid. CONSTITUTION: A cargo handling system for high pressure liquid cargo using immiscible piston liquid and driving gas comprises a freight container(100), a piston liquid storage(20), and a driving gas storage(30). The freight container accepts high pressure liquid cargo and connects to a freight receiving base(10) through a cargo valve(12). The piston liquid storage connects to the freight container through a piston liquid supply pipe(21) and receives piston liquid inside the freight container. The driving gas storage connects to the freight container through a drive gas pipe(31).
Abstract:
본발명의일 실시예에따른저장탱크설치구조는내부면에단열재가시공된결합대상체및 상기결합대상체내부에안착되며, 상기단열재와대면하게제공되는저장탱크를포함할수 있다. 또한, 본발명의다른실시예에따른저장탱크시공방법은내부에중공이형성되게저장탱크를제작하는탱크제작단계, 상기저장탱크가결합될결합대상체의내부면에단열재를시공하는단열시공단계및 상기결합대상체의내부면과상기저장탱크사이에상기단열재가위치하도록, 상기결합대상체의내부로저장탱크를인입하는탱크결합단계를포함할수 있다.
Abstract:
Disclosed are an offshore platform using a guide pile and a method for installing the same. The offshore platform according to an aspect of the present invention comprises a platform which floats on the sea; one or more guide piles which are mounted in a vertical direction on the platform and guides a vertical movement of the platform which floats on the sea; and a base structure which is installed on the sea bed so that the guide pile is fixed thereto. The method for installing the offshore platform according to another aspect of the present invention includes a step of towing a platform, which is provided with one or more guide piles and floats on the sea, to an installation position; a step of lowering the guide pile and fixing the guide pile to a base structure which is installed on the sea bed; and a step of allowing the platform to move freely in a vertical direction with respect to the guide pile and allowing the platform which floats on the sea to move freely in the vertical direction along the guide pile which is fixed to the base structure.
Abstract:
PURPOSE: A device for processing leaking liquefied natural gas is provided to safely process liquefied natural gas leaking from a cargo tank. CONSTITUTION: A device (1000a) for processing leaking liquefied natural gas comprises a cargo tank (100a), a collection unit (200a), an ejector (300a), a first pipe (10a), a high-pressure gas injector (400a), a second pipe (20a), a storage tank (500a), and a third pipe (30a). The cargo tank stores liquefied natural gas therein. The collection unit collects the liquefied natural gas leaking from the cargo tank. The ejector inhales the collected liquefied natural gas using the Bernoulli's theorem. The first pipe connects the collection unit and the ejector to each other. The high-pressure gas injector injects high-pressure gas to the ejector. The second pipe connects the ejector and the high-pressure gas injector to each other.
Abstract:
본 발명은 냉열 발전 시스템에 관한 것으로서, 더욱 상세하게 버려지는 해수를 증기 사이클의 응축원으로 이용가능하며, 랭킨 사이클 장치에서 고온 열원으로서 고온의 연소가스 또는 증기가 이용가능하여 발전 효율을 증대할 수 있는 냉열 발전 시스템에 관한 것이다.
Abstract:
PURPOSE: An apparatus for pressurizing and delivering low temperature liquid is provided to convert low temperature liquid to high pressure gas using a first pressurization part and a high pressure pump. CONSTITUTION: An apparatus for pressurizing and delivering low temperature liquid(1) comprises a liquid tank(10), a first pressurization part(20), a high pressure pump(30), a heat exchange part(40), a first connection pipe, a first control valve(51), a second control valve(52), and a pressure control part(60). The liquid tank stores liquid at low temperature and low pressure. The first pressurization part primarily pressurizes low temperature and low pressure liquid receiving from the liquid tank. The high pressure pump secondarily presses the liquid passing through the first pressurization part. The high temperature and high pressure liquid passing through the high pressure pump is heated in the heat exchange part to become high pressure gas. The first connection pipe connects the liquid tank, the first pressurization part, the high pressure pump, and the heat exchange part. The first control valve is formed in the first connection pipe for connecting the liquid tank and the first pressurization part in order to control the flow of the liquid. The second control valve is formed in the first connection pipe for connecting the first pressurization part and the high pressure pump in order to control the flow of the liquid.
Abstract:
본 발명의 탱크 지지시스템은 상기 탱크의 저면에 위치하는 임의의 제1 고정점을 지나는 복수의 제1 슬라이딩선의 복수개의 지점에 각각 하부지지블럭이 위치하되, 상기 하부지지블럭은 상기 탱크의 저면에 접촉하는 저면고정블럭과 상기 저면고정블럭과 체결되어 바닥면에 놓여지는 바닥면고정블럭으로 이루어지고, 상기 하부지지블럭의 저면고정블럭과 바닥면고정블럭은 상호 일방향으로 슬라이딩 되도록 형성된 일방향 하부돌출부와 상기 일방향 하부돌출부에 상응하는 형상의 일방향 하부블럭홈에 의해 체결되며, 상기 하부지지블럭의 슬라이딩 방향이 상기 제1 슬라이딩선과 일치하는 것을 특징으로 한다.